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The structural code of cyanobacterial genomes

机译:蓝细菌基因组的结构码

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摘要

A periodic bias in nucleotide frequency with a period of about 11 bp is characteristic for bacterial genomes. This signal is commonly interpreted to relate to the helical pitch of negatively supercoiled DNA. Functions in supercoiling-dependent RNA transcription or as a 'structural code' for DNA packaging have been suggested. Cyanobacterial genomes showed especially strong periodic signals and, on the other hand, DNA supercoiling and supercoiling-dependent transcription are highly dynamic and underlie circadian rhythms of these phototrophic bacteria. Focusing on this phylum and dinucleotides, we find that a minimal motif of AT-tracts (AT2) yields the strongest signal. Strong genome-wide periodicity is ancestral to a clade of unicellular and polyploid species but lost upon morphological transitions into two baeocyte-forming and a symbiotic species. The signal is intermediate in heterocystous species and weak in monoploid picocyanobacteria. A pronounced 'structural code'may support efficient nucleoid condensation and segregation in polyploid cells. The major source of the AT2 signal are protein-coding regions, where it is encoded preferentially in the first and third codon positions. The signal shows only few relations to supercoiling-dependent and diurnal RNA transcription in Synechocystis sp. PCC 6803. Strong and specific signals in two distinct transposons suggest roles in transposase transcription and transpososome formation.
机译:核苷酸频率的周期性偏压,具有约11bp的时间是细菌基因组的特征。该信号通常被解释为涉及负面超底DNA的螺旋间距。已经提出了在超级录制的RNA转录中或作为DNA包装的“结构代码”的功能。蓝藻基因组呈特别是强度的周期性信号,另一方面,DNA超咖啡和超级录制的转录是这些光营养细菌的高度动态和昼夜昼夜节律。专注于该门和二核苷酸,发现at-aracts(AT2)的最小基质产生最强的信号。强大的基因组周期是单细胞和多倍体物种的植物,但在形态过渡到两种Beocyte形成和共生物种时失去。该信号是杂囊性物质中间体,在单体野糖细菌中弱。发音的“结构代码”可以在多倍细胞中支持高效的核心凝结和偏析。 AT2信号的主要来源是蛋白质编码区域,其在第一和第三密码子位置中优先编码。该信号仅显示与SyneChocystis SP中的超铜依赖性和昼夜RNA转录的关系。 PCC 6803.两个不同的转座子中的强且特异性信号表明了转座酶转录和体瘤形成中的作用。

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